Raman spectroscopy and electrical properties of polypyrrole doped dodecylbenzene sulfonic acid/Y2O3 composites

Muhammad Irfan, A. Mustafa, A. Shakoor, A. N. Niaz, N. Anwar, M. Imran, A. Majid
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Abstract

The doped dodecylbenzene sulfonic acid (DBSA) with polypyrrole (PPy) and also incorporated an increasing concentration of Y2O3 to obtain the composites of PPy-DBSA-Y2O3 via chemical polymerization technique. The PPy-DBSA-Y2O3 composites formation were confirmed by interaction between PPy-DBSA and Y2O3-particles utilizing Raman spectroscopy. Thermal stability of PPy-DBSA- Y2O3 composites was improved as enhanced the load of Y2O3-particles. The increase in DC conductivity by mixing Y2O3 into PPy-DBSA at all temperatures showed the three-dimensional Mott’s variable range hopping model. Density of localized states, hopping dimension as well as activation energy are computed and found to be affected due to the presence of Y2O3 in DBSA-PPy. The ESR of Y2O3 (~12 Ω), PPy (~11.80 Ω), PPy-DBSA (~11.30 Ω) and PPy-DBSA-8%Y2O3 composite (~9.50 Ω). EIS results confirm that the PPy-DBSA-8% Y2O3 composite with a low value of impedance gives a maximum value of electrical conductivity.
掺杂聚吡咯的十二烷基苯磺酸/Y2O3 复合材料的拉曼光谱和电学特性
通过化学聚合技术,在聚吡咯(PPy)中掺入十二烷基苯磺酸(DBSA),并加入浓度不断增加的 Y2O3,从而获得 PPy-DBSA-Y2O3 复合材料。利用拉曼光谱,PPy-DBSA 和 Y2O3 颗粒之间的相互作用证实了 PPy-DBSA-Y2O3 复合材料的形成。随着 Y2O3 粒子含量的增加,PPy-DBSA-Y2O3 复合材料的热稳定性得到改善。将 Y2O3 混入 PPy-DBSA 后,直流电导在所有温度下都有所提高,这显示了三维莫特变程跳变模型。对局部态密度、跳跃维度和活化能进行了计算,发现 Y2O3 在 DBSA-PPy 中的存在会对其产生影响。Y2O3(约 12 Ω)、PPy(约 11.80 Ω)、PPy-DBSA(约 11.30 Ω)和 PPy-DBSA-8%Y2O3 复合材料(约 9.50 Ω)的 ESR。EIS 结果证实,阻抗值较低的 PPy-DBSA-8%Y2O3 复合材料具有最大的导电率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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